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Jasmonic acid accumulation and systemic photosynthetic and electrical changes in locally burned wild type tomato, ABA-deficient sitiens mutants and sitiens pre-treated by ABA

机译:局部预处理的野生型番茄,ABA缺乏的西汀突变体和经ABA预处理的西汀的茉莉酸积累和系统的光合和电变化

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摘要

Burning the terminal leaflet of younger tomato (Lycopersicon esculentum Mill.) leaf caused local and systemic changes in the surface electrical potential (SEP) and gas exchange (GE) parameters. The local and systemic accumulation of endogenous abscisic acid (ABA) and jasmonic acid (JA) was measured 85 min after burning. The experiments were conducted with wild type (WT) plants, ABA-deficient mutant sitiens (SIT) and ABA pre-treated SIT plants (SITA). First changes in SEP were detected within 1.5 min after burning and were followed by a decrease in GE parameters within 3-6 min in WT, SIT and SITA plants. GE and SEP time courses of SIT were different and wave amplitudes of SEP of SIT were lower compared to WT and SITA. ABA content in WT and SITA control plants was similar and substantially higher compared to SIT, JA content was similar among WT, SIT and SITA. While changes in the ABA content in systemic leaves have not been recorded after burning, the systemic JA content was substantially increased in WT and more in SIT and SITA. The results suggest that ABA content governs the systemic reaction of GE and the SEP shape upon local burning. ABA, JA and SEP participate in triggering the GE reaction. The ABA shortage in the SIT in the reaction to burning is partly compensated by an enhanced JA accumulation. This JA compensation is maintained even in SIT endogenously supplied with ABA. A correlation between the systemic JA content and changes in GE parameters or SEP was not found.
机译:燃烧较年轻的番茄(Lycopersicon esculentum Mill。)叶片的末端小叶会引起表面电势(SEP)和气体交换(GE)参数的局部和系统变化。燃烧后85分钟测量内源性脱落酸(ABA)和茉莉酸(JA)的局部和全身蓄积。实验是用野生型(WT)植物,ABA缺陷型突变位点(SIT)和ABA预处理的SIT植物(SITA)进行的。在燃烧后1.5分钟内检测到SEP的首次变化,然后在WT,SIT和SITA植物中3-6分钟内GE参数下降。与WT和SITA相比,SIT的GE和SEP时程不同,并且SIT的SEP的波幅更低。与SIT相比,WT和SITA对照植物中的ABA含量相似且高得多,WT,SIT和SITA中的JA含量相似。虽然燃烧后尚未记录到全身叶片中ABA含量的变化,但WT中全身性JA含量显着增加,而SIT和SITA中则更多。结果表明,ABA含量决定了局部燃烧时GE的系统反应和SEP形状。 ABA,JA和SEP参与触发GE反应。燃烧反应中SIT中ABA的缺乏可部分通过增强的JA积累得到补偿。即使在由ABA内生提供的SIT中也可以维持这种JA补偿。未发现全身JA含量与GE参数或SEP变化之间的相关性。

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